| 1 | /*
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| 2 |  * Matrix.hpp
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| 3 |  *
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| 4 |  *  Created on: Jun 25, 2010
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| 5 |  *      Author: crueger
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| 6 |  */
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| 7 | 
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| 8 | #ifndef MATRIX_HPP_
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| 9 | #define MATRIX_HPP_
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| 10 | 
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| 11 | #include <iosfwd>
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| 12 | #include "defs.hpp"
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| 13 | 
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| 14 | /**
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| 15 |  * Simple class to store matrices with a few extra functions
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| 16 |  */
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| 17 | 
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| 18 | class Vector;
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| 19 | class MatrixContent;
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| 20 | 
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| 21 | class Matrix
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| 22 | {
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| 23 |   friend Vector operator*(const Matrix&,const Vector&);
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| 24 | public:
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| 25 |   Matrix();
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| 26 | 
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| 27 |   /**
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| 28 |    * construct a matrix from a 3x3 double array that contains all Elements.
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| 29 |    *
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| 30 |    * The elements are laid out in the following way:
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| 31 |    * array -> matrix
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| 32 |    * 0 -> (0,0)
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| 33 |    * 1 -> (1,0)
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| 34 |    * 2 -> (2,0)
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| 35 |    * 3 -> (0,1)
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| 36 |    * 4 -> (1,1)
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| 37 |    * 5 -> (2,1)
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| 38 |    * 6 -> (0,2)
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| 39 |    * 7 -> (1,2)
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| 40 |    * 8 -> (2,2)
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| 41 |    *
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| 42 |    */
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| 43 |   Matrix(const double*);
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| 44 |   Matrix(const Matrix&);
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| 45 |   virtual ~Matrix();
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| 46 | 
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| 47 |   /**
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| 48 |    * Set the matrix to a unit matrix.
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| 49 |    */
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| 50 |   void one();
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| 51 | 
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| 52 |   /**
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| 53 |    * Access the matrix at index (i,j)
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| 54 |    */
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| 55 |   double &at(size_t i, size_t j);
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| 56 |   /**
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| 57 |    * Access the matrix at index (i,j)
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| 58 |    */
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| 59 |   const double at(size_t i, size_t j) const;
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| 60 | 
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| 61 |   /**
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| 62 |    * Set the matrix at index (i,j).
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| 63 |    *
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| 64 |    * Slightly faster than at(i,j)=x
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| 65 |    */
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| 66 |   void set(size_t i, size_t j, const double value);
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| 67 | 
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| 68 |   /**
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| 69 |    * get the ith row of the matrix as a vector
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| 70 |    */
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| 71 |   Vector &row(size_t);
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| 72 |   const Vector &row(size_t) const;
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| 73 | 
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| 74 |   /**
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| 75 |    * get the ith column of the matrix as a vector
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| 76 |    */
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| 77 |   Vector &column(size_t);
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| 78 |   const Vector &column(size_t) const;
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| 79 | 
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| 80 |   /**
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| 81 |    * get the diagonal of the matrix as a vector
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| 82 |    */
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| 83 |   Vector &diagonal();
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| 84 |   const Vector &diagonal() const;
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| 85 | 
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| 86 |   /**
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| 87 |    * Calculate the determinant of the matrix
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| 88 |    */
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| 89 |   double determinant() const;
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| 90 | 
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| 91 |   /**
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| 92 |    * Calculate the inverse of the matrix.
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| 93 |    *
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| 94 |    * Rather costly, so use precomputation as often as possible.
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| 95 |    */
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| 96 |   Matrix invert() const;
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| 97 | 
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| 98 |   Matrix transpose() const;
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| 99 | 
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| 100 |   // operators
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| 101 |   Matrix &operator=(const Matrix&);
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| 102 | 
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| 103 |   Matrix &operator+=(const Matrix&);
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| 104 |   Matrix &operator-=(const Matrix&);
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| 105 |   Matrix &operator*=(const Matrix&);
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| 106 | 
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| 107 |   Matrix &operator*=(const double);
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| 108 | 
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| 109 |   Matrix operator+(const Matrix&) const;
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| 110 |   Matrix operator-(const Matrix&) const;
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| 111 |   Matrix operator*(const Matrix&) const;
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| 112 | 
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| 113 |   bool operator==(const Matrix&) const;
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| 114 | 
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| 115 | private:
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| 116 |   Matrix(MatrixContent*);
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| 117 |   void createViews();
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| 118 |   MatrixContent *content;
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| 119 |   // we keep around some Vector views of the matrix, to return references
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| 120 |   Vector* rows_ptr[NDIM];
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| 121 |   Vector* columns_ptr[NDIM];
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| 122 |   Vector* diagonal_ptr;
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| 123 | };
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| 124 | 
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| 125 | Matrix operator*(const double,const Matrix&);
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| 126 | Matrix operator*(const Matrix&,const double);
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| 127 | 
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| 128 | /**
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| 129 |  * Takes a symmetric matrix that stores the lower diagonal and produces a
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| 130 |  * full matrix.
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| 131 |  *
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| 132 |  * The array is laid out as follows:
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| 133 |  *
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| 134 |  * array -> matrix
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| 135 |  * 0 -> (0,0)
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| 136 |  * 1 -> (1,0);(0,1)
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| 137 |  * 2 -> (1,1)
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| 138 |  * 3 -> (2,0);(0,2)
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| 139 |  * 4 -> (2,1);(1,2)
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| 140 |  * 5 -> (2,2)
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| 141 |  */
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| 142 | Matrix ReturnFullMatrixforSymmetric(const double * const cell_size);
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| 143 | 
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| 144 | std::ostream &operator<<(std::ostream&,const Matrix&);
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| 145 | Vector operator*(const Matrix&,const Vector&);
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| 146 | Vector& operator*=(Vector&,const Matrix&);
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| 147 | 
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| 148 | #endif /* MATRIX_HPP_ */
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